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  2. Dichloromethane - Wikipedia

    en.wikipedia.org/wiki/Dichloromethane

    Its high volatility makes it an inhalation hazard. [26] [27] It can also be absorbed through the skin. [1] [28] Symptoms of acute overexposure to dichloromethane via inhalation include difficulty concentrating, dizziness, fatigue, nausea, headaches, numbness, weakness, and irritation of the upper respiratory tract and eyes.

  3. Dichloromethane (data page) - Wikipedia

    en.wikipedia.org/wiki/Dichloromethane_(data_page)

    Phase behavior Triple point? K (? °C), ? Pa Critical point [6]: 510 K (237 °C), 6100 kPa Std enthalpy change of fusion, Δ fus H o +6.160 kJ/mol Std entropy change

  4. Relative volatility - Wikipedia

    en.wikipedia.org/wiki/Relative_volatility

    Relative volatility is a measure comparing the vapor pressures of the components in a liquid mixture of chemicals. This quantity is widely used in designing large industrial distillation processes. [ 1 ] [ 2 ] [ 3 ] In effect, it indicates the ease or difficulty of using distillation to separate the more volatile components from the less ...

  5. Volatility (chemistry) - Wikipedia

    en.wikipedia.org/wiki/Volatility_(chemistry)

    Volatility can also describe the tendency of a vapor to condense into a liquid or solid; less volatile substances will more readily condense from a vapor than highly volatile ones. [1] Differences in volatility can be observed by comparing how fast substances within a group evaporate (or sublimate in the case of solids) when exposed to the ...

  6. Solvent - Wikipedia

    en.wikipedia.org/wiki/Solvent

    A solvent is usually a liquid but can also be a solid, a gas, or a supercritical fluid. Water is a solvent for polar molecules, and the most common solvent used by living things; all the ions and proteins in a cell are dissolved in water within the cell. Major uses of solvents are in paints, paint removers, inks, and dry cleaning. [2]

  7. 1,4-Dichlorobenzene - Wikipedia

    en.wikipedia.org/wiki/1,4-Dichlorobenzene

    p-DCB is produced by chlorination of benzene using ferric chloride as a catalyst: . C 6 H 6 + 2 Cl 2 → C 6 H 4 Cl 2 + 2 HCl. The chief impurity is the 1,2 isomer.The compound can be purified by fractional crystallization, taking advantage of its relatively high melting point of 53.5 °C; the isomeric dichlorobenzenes and chlorobenzene melt well below room temperature.